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The emerging role of magnesium in CKD
1Department of Inter-Organ Communication Research in Kidney Diseases, Osaka University Graduate School of Medicine, 2-2 Yamada-oka, Suita, 565-0871, Japan. sakaguchi@kid.med.osaka-u.ac.jp.
Insights
Magnesium plays a key role in chronic kidney disease (CKD) by impacting vascular calcification and mortality. Supplementation may improve cardiovascular outcomes and slow CKD progression, warranting further clinical trials.
Area of Science:
- Nephrology
- Cardiovascular Medicine
- Mineral Metabolism
Background:
- Hypomagnesemia is prevalent in chronic kidney disease (CKD) patients, even those on dialysis.
- Tubular dysfunction and interstitial fibrosis impair magnesium reabsorption in CKD.
- Magnesium deficiency may exacerbate CKD progression and phosphate toxicity.
Purpose of the Study:
- To review the clinical relevance of magnesium in CKD.
- To explore magnesium's role in vascular calcification and mortality.
- To assess magnesium's potential therapeutic benefits in CKD patients.
Main Methods:
- Literature review of in vitro studies, cohort studies, and randomized trials.
- Analysis of magnesium's impact on tubular function, inflammation, and vascular calcification.
- Examination of magnesium levels in relation to CKD progression and mortality.
Main Results:
- Magnesium deficiency worsens phosphate-induced tubular cell death and inflammation.
- Low serum magnesium increases CKD patients' risk of end-stage kidney disease, especially with high phosphate.
- Magnesium inhibits phosphate-induced vascular smooth muscle cell calcification; oral magnesium oxide slowed coronary artery calcification in a trial.
Conclusions:
- Magnesium plays a crucial role in managing vascular calcification and cardiovascular prognosis in CKD.
- Further randomized trials are necessary to confirm magnesium's impact on hard clinical outcomes in CKD patients.
Abstract:
Increasing evidence has suggested a clinical relevance of magnesium in the context of vascular calcification and mortality among patients with CKD. Hypomagnesemia is not rare among non-dialysis CKD patients despite their decreased glomerular filtration rates; the prevalence rate was about 15% even in CKD stages G4 and G5. Among several potential causes of hypomagnesemia, tubular dysfunction/interstitial fibrosis may play a pivotal role in the development of hypomagnesemia in CKD, which impairs tubular magnesium reabsorption. Magnesium deficiency may, in turn, be involved in the progression of CKD. An in vitro study has revealed that magnesium deficiency aggravates tubular cell death and inflammation induced by phosphate load. In a cohort study of patients with CKD, low-serum magnesium levels enhanced the risk of end-stage kidney disease related to high-serum phosphate levels, suggesting a close relationship between magnesium deficiency and phosphate toxicity. More importantly, magnesium has a potent capacity to inhibit the calcification of vascular smooth muscle cells induced by phosphate. A randomized trial has shown the efficacy of oral magnesium oxide in retarding the progression of coronary artery calcification among non-dialysis CKD patients. Thus, magnesium might provide better cardiovascular prognosis; indeed, hemodialysis patients with mild hypermagnesemia exhibited the lowest mortality rate. Further randomized trials are needed to assess the impact of magnesium in terms of hard clinical outcomes among CKD patients.
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